Wefki, H; Salah, M; Elbeltagi, E; Elsheikh, A and Khallaf, R (2025) A generative design-based optimization model for multi-objective construction site layout planning. Engineering, Construction and Architectural Management, 32(8), pp. 5429-5455. ISSN 0969-9988
Abstract
Purpose – Given the growing interest in modern construction techniques and the emergence of innovative technologies, construction site layout planning research has progressively been investigating approaches to adopt innovative concepts and incorporate renewed approaches to improve widespread efficiency. This research develops a decision-making tool that optimizes construction site layout plans. The developed model targets two main objectives: minimizing material transportation costs and maximizing safety by optimally placing facilities on construction sites. Design/methodology/approach – A novel approach is devised based on the integration of Building Information Modeling and Generative Design (BIM-GD). This engine is used to optimize the multi-objective site layout problems to identify layout alternatives in the early project stages. Parametric modeling uses Dynamo to construct the model and explore constraints initially. Finally, the GD environment is utilized to create different design alternatives, and then the decision-making procedure selects the most appropriate design alternative. Additionally, a case study is applied to validate the effectiveness of the developed model. Findings – The results indicate the effectiveness of the proposed GD tool and its potential for more complex applications. The GD engine examined optimal layout plans, balancing different objectives and adhering to appointed geometric constraints. A case study was conducted to assess the model's effectiveness and showcase its suitability. Construction Site Layout Planning (CSLP) is an essential step in design that can influence considerable aspects, such as material transportation expenses and different safety standards on the site. Employing visual programming for parametric modeling within Dynamo-Revit creates an expedient and user-friendly platform for planning engineers who may require more programming expertise to create and program algorithmic models visually. Utilizing GD in CSLP has proven to be a powerful tool with consequential prospects for improving applications and executing more models. Practical implications – The findings from this framework are intended to help construction practitioners select the most appropriate site layout during early project stages while incorporating different safety criteria inside construction sites to alleviate actual safety risks. Originality/value – A new approach is proposed that utilizes an integrated BIM-GD engine to optimize multi-objective site layout problems. This approach targets two main objectives: minimizing material transportation costs and maximizing safety by optimally placing facilities in construction sites.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | construction sites; generative design; layout planning; optimization; parametric modeling; safety; transportation cost; visual programming |
| Index terms: | building information modelling, efficiency, platform, case study, engineer, placing, effectiveness, modelling, site layout, construction site, construction practitioner, program, integration, methodology, decision-making, programming, suitability, safety standards, generative design, emergence |
| Subjects: | profession, data collection methods, work location, professional development, concrete and cementitious materials, performance management, software systems, design criteria, systems engineering, information systems, occupational health and safety management, organizational analysis, decision analysis, programming, site logistics, analytical methods, digital design, design process, research methods |
| Topics: | Construction Materials, Information Management, Research Practice, Roles and Professions, Digital Applications, Design Practice, Site Management, Organizational Design, Health and Safety, Engineering Principles, Risk Management, Quality Management |
| Descriptive scope: | 4 PCTE |
N.B. Descriptive scope is a count of how many of the five facets of empirical research are indicated by the words used in title, abstract and keywords. It is not intended as a judgement on the research; merely a count of the kind of word we would expect to indicate Phenomenon, Concepts, Theoretical framing, Empirical techniques, Analytical techniques. If all five are present, then a code of “5 PCTEA” will indicate this. If you feel the coding for this record is questionable, we welcome discussion around the terms we matched or the way we categorized them. The facet you would expect may not be coded, or a facet may be coded inappropriately. This can also bear on a larger question, of which facets should be treated as defining in construction management research. Please get in touch, and we will look at it. More details here